We apply the formalism of thermofield dynamics to group field theory quantum gravity and construct thermal representations associated with generalised equilibrium Gibbs states using Bogoliubov transformations. The newly constructed class of thermal vacua are entangled, two-mode squeezed, thermofield double states. The corresponding finite temperature representations are inequivalent to the standard zero temperature one based on a degenerate vacuum. An interesting class of states, coherent thermal states, are defined and understood as thermal quantum gravity condensates
We take the first steps towards identifying the hydrodynamics of group field theories (GFTs) and rel...
It is well known that any multimode positive definite quadratic Hamiltonian can be transformed into ...
We show how the large-scale cosmological dynamics can be obtained from the hydrodynamics of isotropi...
The condensate cosmology programme of group field theory quantum gravity has produced several intere...
The intersection of thermodynamics, quantum theory and gravity has revealed many profound insights, ...
We identify a class of condensate states in the group field theory (GFT) approach to quantum gravity...
Due to the absence of well-defined concepts of time and energy in background independent systems, fo...
Gibbs states are known to play a crucial role in the statistical description of a system with a larg...
Entanglement in random states has turned into a useful approach to quantum thermalization and black ...
We construct condensate states encoding the continuum spherically symmetric quantum geometry of an i...
We present a simple model of quantum cosmology based on the group field theory (GFT) approach to qua...
Texto completo. Acesso restrito. p. 481–498The concept of thermoalgebra, a kind of representation fo...
We establish the Schlieder and the Borchers property for thermal field theories. In addition, we pro...
We demonstrate that the time-dependent projected Gross-Pitaevskii equation (GPE) derived earlier [M....
This monograph presents recent developments in quantum field theory at finite temperature. By using ...
We take the first steps towards identifying the hydrodynamics of group field theories (GFTs) and rel...
It is well known that any multimode positive definite quadratic Hamiltonian can be transformed into ...
We show how the large-scale cosmological dynamics can be obtained from the hydrodynamics of isotropi...
The condensate cosmology programme of group field theory quantum gravity has produced several intere...
The intersection of thermodynamics, quantum theory and gravity has revealed many profound insights, ...
We identify a class of condensate states in the group field theory (GFT) approach to quantum gravity...
Due to the absence of well-defined concepts of time and energy in background independent systems, fo...
Gibbs states are known to play a crucial role in the statistical description of a system with a larg...
Entanglement in random states has turned into a useful approach to quantum thermalization and black ...
We construct condensate states encoding the continuum spherically symmetric quantum geometry of an i...
We present a simple model of quantum cosmology based on the group field theory (GFT) approach to qua...
Texto completo. Acesso restrito. p. 481–498The concept of thermoalgebra, a kind of representation fo...
We establish the Schlieder and the Borchers property for thermal field theories. In addition, we pro...
We demonstrate that the time-dependent projected Gross-Pitaevskii equation (GPE) derived earlier [M....
This monograph presents recent developments in quantum field theory at finite temperature. By using ...
We take the first steps towards identifying the hydrodynamics of group field theories (GFTs) and rel...
It is well known that any multimode positive definite quadratic Hamiltonian can be transformed into ...
We show how the large-scale cosmological dynamics can be obtained from the hydrodynamics of isotropi...